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1. Toward an AI Era: Advances in Electronic Skins.

3. Frictionless multiphasic interface for near-ideal aero-elastic pressure sensing.

4. Implant-to-implant wireless networking with metamaterial textiles.

5. Size-dependent bending of a rectangular polymer film.

6. Battery-free and AI-enabled multiplexed sensor patches for wound monitoring.

7. Technology Roadmap for Flexible Sensors.

8. Dynamic Modeling of Intrinsic Self-Healing Polymers Using Deep Learning.

9. Macromolecule conformational shaping for extreme mechanical programming of polymorphic hydrogel fibers.

10. A wireless and battery-free wound infection sensor based on DNA hydrogel.

11. Wirelessly operated bioelectronic sutures for the monitoring of deep surgical wounds.

12. Scaling Metal-Elastomer Composites toward Stretchable Multi-Helical Conductive Paths for Robust Responsive Wearable Health Devices.

13. Progress and Roadmap for Intelligent Self-Healing Materials in Autonomous Robotics.

14. Artificially innervated self-healing foams as synthetic piezo-impedance sensor skins.

15. Near-hysteresis-free soft tactile electronic skins for wearables and reliable machine learning.

16. Super Tough and Self-Healable Poly(dimethylsiloxane) Elastomer via Hydrogen Bonding Association and Its Applications as Triboelectric Nanogenerators.

17. Osmosis-Powered Hydrogel Microneedles for Microliters of Skin Interstitial Fluid Extraction within Minutes.

18. A transparent, self-healing and high-κ dielectric for low-field-emission stretchable optoelectronics.

19. Wireless battery-free body sensor networks using near-field-enabled clothing.

20. Design and applications of stretchable and self-healable conductors for soft electronics.

21. A neuro-inspired artificial peripheral nervous system for scalable electronic skins.

22. Soft Electronically Functional Polymeric Composite Materials for a Flexible and Stretchable Digital Future.

23. Self-Healing Electronic Materials for a Smart and Sustainable Future.

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